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18 Commits
UEM3 ... UEM9

Author SHA1 Message Date
richonguzman
84e70afda2 no licence 2025-06-19 09:45:28 -04:00
richonguzman
46a3dc0d39 beforeLicenceChange 2025-06-19 09:44:55 -04:00
richonguzman
50b3094de9 dateUpdate 2025-06-12 23:08:46 -04:00
richonguzman
48c919f3f2 ready 2025-06-11 19:47:56 -04:00
richonguzman
5cda9a2285 HT_CT62 fixed 2025-05-18 12:22:49 -04:00
richonguzman
194ae94a43 kill white spaces 2025-05-18 08:44:46 -04:00
richonguzman
9baf066386 date update 2025-05-18 00:13:11 -04:00
richonguzman
7595da21cd fix for other boards 2025-05-18 00:12:29 -04:00
richonguzman
6be28b47ce return 2025-05-17 11:52:48 -04:00
richonguzman
3ea1a19a06 update 2025-05-17 11:52:24 -04:00
richonguzman
35cafac601 si7021 clean code update 2025-05-17 11:49:29 -04:00
richonguzman
b59153d8df wx sensor added 2025-05-17 11:43:54 -04:00
richonguzman
79b967034f working basics 2025-05-17 10:00:53 -04:00
richonguzman
a40502344f version number update 2025-05-12 18:47:00 -04:00
richonguzman
af1b623f7f newDate 2025-05-12 11:30:30 -04:00
richonguzman
0c7d13cf7d lowpowerchange 2025-05-08 14:01:25 -04:00
richonguzman
10798d2c9a 8.45mA 2025-05-08 12:53:55 -04:00
richonguzman
3cc8fed15f preparing readme 2025-04-24 19:48:33 -04:00
35 changed files with 183 additions and 117 deletions

21
LICENSE
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@@ -1,21 +0,0 @@
MIT License
Copyright (c) 2023 Ricardo Guzman (Richonguzman)
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in all
copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
SOFTWARE.

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@@ -54,6 +54,7 @@ ____________________________________________________
## Timeline (Versions):
- 2025-04-20000000
- 2025.03.20 Manager List added to enable/disable DigiEcoMode and Tx Control. Thanks LB5JJ.
- 2025.03.03 T-Beam Supreme board added and more BlackList rules added.
- 2025.02.28 Heltec Wireless Paper with Epaper working. Thanks SzymonPriv for pointing to the right library.

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@@ -669,13 +669,13 @@
id="digi.ecoMode"
>
<option value="0">
OFF (Normal Mode)
OFF (Normal Mode - WiFiAP enabled)
</option>
<option value="1">
Ultra Eco Mode (Sleep till Packet Rx (WiFiAP/WebUI & Display disabled))
</option>
<option value="2">
OFF (Normal Mode without WiFiAP)
OFF (Normal Mode - WiFiAP disabled)
</option>
</select>
</div>

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@@ -8,10 +8,10 @@ namespace APRS_IS_Utils {
void upload(const String& line);
void connect();
void checkStatus();
String checkForStartingBytes(const String& packet);
String buildPacketToUpload(const String& packet);
bool processReceivedLoRaMessage(const String& sender, const String& packet, bool thirdParty);
void processLoRaPacket(const String& packet);

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@@ -8,7 +8,7 @@ namespace BATTERY_Utils {
void adcCalibration();
void adcCalibrationCheck();
void setup();
float checkInternalVoltage();
float checkExternalVoltage();

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@@ -152,7 +152,7 @@ public:
WEBADMIN webadmin;
NTP ntp;
REMOTE_MANAGEMENT remoteManagement;
void init();
void writeFile();
Configuration();

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@@ -13,7 +13,6 @@ namespace LoRa_Utils {
void changeFreqTx();
void changeFreqRx();
void wakeRadio();
//void startReceive();
void sleepRadio();
}

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@@ -8,6 +8,7 @@ namespace SLEEP_Utils {
void setup();
void checkWakeUpFlag();
void startSleeping();
void checkSerial();
}

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@@ -8,7 +8,7 @@ namespace TNC_Utils {
void setup();
void loop();
void sendToClients(const String& packet);
void sendToSerial(const String& packet);

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@@ -11,7 +11,7 @@ namespace WIFI_Utils {
void startWiFi();
void checkAutoAPTimeout();
void setup();
}
#endif

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@@ -129,7 +129,7 @@
delayATMessage = 0;
} else if (ATMessage.indexOf(Config.callsign) >= 3 && !modemLoggedToAPRSIS && response.indexOf("OK") >= 0 && !stationBeacon) { // login info
validAT = true;
delayATMessage = 0;
delayATMessage = 0;
} else if (ATMessage.indexOf(Config.callsign) == 0 && !beaconSended && response.indexOf("OK") >= 0 && !stationBeacon) { // self beacon or querys
validAT = true;
i = 1;
@@ -203,4 +203,5 @@
delay(1);
}
}
#endif

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@@ -48,7 +48,7 @@ ___________________________________________________________________*/
#endif
String versionDate = "2025-04-25";
String versionDate = "2025-06-20";
Configuration Config;
WiFiClient espClient;
#ifdef HAS_GPS
@@ -105,6 +105,7 @@ void setup() {
#endif
Utils::checkRebootMode();
APRS_IS_Utils::firstConnection();
SLEEP_Utils::checkSerial();
}
void loop() {

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@@ -28,7 +28,7 @@ uint32_t lastRxTime = millis();
bool passcodeValid = false;
#ifdef HAS_A7670
extern bool stationBeacon;
extern bool stationBeacon;
#endif
@@ -60,7 +60,7 @@ namespace APRS_IS_Utils {
aprsAuth += Config.callsign;
aprsAuth += " pass ";
aprsAuth += Config.aprs_is.passcode;
aprsAuth += " vers CA2RXU_iGate 2.3 filter ";
aprsAuth += " vers CA2RXU_iGate 3.0 filter ";
aprsAuth += Config.aprs_is.filter;
upload(aprsAuth);
}
@@ -75,7 +75,7 @@ namespace APRS_IS_Utils {
wifiState = "--";
} else {
wifiState = "AP";
}
}
if (!Config.display.alwaysOn && Config.display.timeout != 0) {
displayToggle(true);
}
@@ -136,7 +136,7 @@ namespace APRS_IS_Utils {
ackMessage.concat(packet.substring(packet.indexOf("{") + 1));
ackMessage.trim();
//Serial.println(ackMessage);
String addToBuffer = Config.callsign;
addToBuffer += ">APLRG1";
if (!thirdParty) addToBuffer += ",RFONLY";

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@@ -157,7 +157,12 @@ namespace BATTERY_Utils {
return (2 * (sampleSum/100) * adcReadingTransformation) + voltageDividerCorrection; // raw voltage without mapping
}
#else
return (2 * (sampleSum/100) * adcReadingTransformation) + voltageDividerCorrection; // raw voltage without mapping
#ifdef LIGHTGATEWAY_PLUS_1_0
double inputDivider = (1.0 / (560.0 + 100.0)) * 100.0; // The voltage divider is a 560k + 100k resistor in series, 100k on the low side.
return (((sampleSum/100) * adcReadingTransformation) / inputDivider) + 0.41;
#else
return (2 * (sampleSum/100) * adcReadingTransformation) + voltageDividerCorrection; // raw voltage without mapping
#endif
#endif
#endif
// return mapVoltage(voltage, 3.34, 4.71, 3.0, 4.2); // mapped voltage
@@ -246,9 +251,7 @@ namespace BATTERY_Utils {
String telemetry = "|";
telemetry += generateEncodedTelemetryBytes(telemetryCounter, true, 0);
telemetryCounter++;
if (telemetryCounter == 1000) {
telemetryCounter = 0;
}
if (telemetryCounter == 1000) telemetryCounter = 0;
if (Config.battery.sendInternalVoltage) telemetry += generateEncodedTelemetryBytes(checkInternalVoltage(), false, 0);
if (Config.battery.sendExternalVoltage) telemetry += generateEncodedTelemetryBytes(checkExternalVoltage(), false, 1);
telemetry += "|";

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@@ -116,7 +116,7 @@ namespace DIGI_Utils {
}
}
void processLoRaPacket(const String& packet) {
void processLoRaPacket(const String& packet) {
if (packet.indexOf("NOGATE") == -1) {
bool thirdPartyPacket = false;
String temp, Sender;

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@@ -44,7 +44,7 @@
#endif
#endif
#endif
extern Configuration Config;
bool displayFound = false;

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@@ -101,7 +101,7 @@ namespace GPS_Utils {
}
generateBeaconFirstPart();
String encodedGPS = encodeGPS(Config.beacon.latitude, Config.beacon.longitude, Config.beacon.overlay, Config.beacon.symbol);
iGateBeaconPacket += encodedGPS;
iGateBeaconPacket += encodedGPS;
iGateLoRaBeaconPacket += encodedGPS;
}

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@@ -22,7 +22,7 @@ bool transmitFlag = true;
SX1262 radio = new Module(RADIO_CS_PIN, RADIO_DIO1_PIN, RADIO_RST_PIN, RADIO_BUSY_PIN);
#endif
#ifdef HAS_SX1268
#if defined(LIGHTGATEWAY_1_0)
#if defined(LIGHTGATEWAY_1_0) || defined(LIGHTGATEWAY_PLUS_1_0)
SPIClass loraSPI(FSPI);
SX1268 radio = new Module(RADIO_CS_PIN, RADIO_DIO1_PIN, RADIO_RST_PIN, RADIO_BUSY_PIN, loraSPI);
#else
@@ -50,7 +50,7 @@ namespace LoRa_Utils {
}
void setup() {
#ifdef LIGHTGATEWAY_1_0
#if defined (LIGHTGATEWAY_1_0) || defined(LIGHTGATEWAY_PLUS_1_0)
pinMode(RADIO_VCC_PIN,OUTPUT);
digitalWrite(RADIO_VCC_PIN,HIGH);
loraSPI.begin(RADIO_SCLK_PIN, RADIO_MISO_PIN, RADIO_MOSI_PIN, RADIO_CS_PIN);
@@ -69,11 +69,7 @@ namespace LoRa_Utils {
while (true);
}
#if defined(HAS_SX1262) || defined(HAS_SX1268) || defined(HAS_LLCC68)
//if (!Config.lowPowerMode) {
radio.setDio1Action(setFlag);
/*} else {
radio.setDIOMapping(1, RADIOLIB_SX126X_IRQ_RX_DONE);
}*/
#endif
#if defined(HAS_SX1278) || defined(HAS_SX1276)
radio.setDio0Action(setFlag, RISING);
@@ -84,7 +80,7 @@ namespace LoRa_Utils {
radio.setCodingRate(Config.loramodule.codingRate4);
radio.setCRC(true);
#if (defined(RADIO_RXEN) && defined(RADIO_TXEN)) || defined(LIGHTGATEWAY_1_0) // QRP Labs LightGateway has 400M22S (SX1268)
#if (defined(RADIO_RXEN) && defined(RADIO_TXEN)) // QRP Labs LightGateway has 400M22S (SX1268)
radio.setRfSwitchPins(RADIO_RXEN, RADIO_TXEN);
#endif
@@ -203,7 +199,7 @@ namespace LoRa_Utils {
}
} else {
packet = "";
}
}
lastRxTime = millis();
return packet;
}

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@@ -14,14 +14,14 @@ unsigned long ota_progress_millis = 0;
namespace OTA_Utils {
void setup(AsyncWebServer *server) {
if (Config.ota.username != "" && Config.ota.password != "") {
ElegantOTA.begin(server, Config.ota.username.c_str(), Config.ota.password.c_str());
} else {
ElegantOTA.begin(server);
}
ElegantOTA.setAutoReboot(true);
ElegantOTA.onStart(onOTAStart);
ElegantOTA.onProgress(onOTAProgress);
@@ -55,8 +55,8 @@ namespace OTA_Utils {
Serial.println(success ? "OTA update finished successfully!" : "There was an error during OTA update!");
displayShow("", "", statusMessage, "", rebootMessage, "", "", 4000);
isUpdatingOTA = false;
}
}

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@@ -216,6 +216,7 @@ namespace POWER_Utils {
#ifdef INTERNAL_LED_PIN
pinMode(INTERNAL_LED_PIN, OUTPUT);
digitalWrite(INTERNAL_LED_PIN, LOW);
#endif
if (Config.battery.sendExternalVoltage || Config.battery.monitorExternalVoltage) {
@@ -223,30 +224,34 @@ namespace POWER_Utils {
}
#ifdef VEXT_CTRL
if (Config.digi.ecoMode != 1) {
pinMode(VEXT_CTRL,OUTPUT); // GPS + TFT on HELTEC Wireless_Tracker and only for Oled in HELTEC V3
#if defined(HELTEC_WIRELESS_TRACKER) || defined(HELTEC_V3)
digitalWrite(VEXT_CTRL, HIGH);
#endif
#if defined(HELTEC_WP) || defined(HELTEC_WS) || defined(HELTEC_V3_2)
digitalWrite(VEXT_CTRL, LOW);
#endif
}
pinMode(VEXT_CTRL,OUTPUT); // GPS + TFT on HELTEC Wireless_Tracker and only for Oled in HELTEC V3
#if defined(HELTEC_WIRELESS_TRACKER) || defined(HELTEC_V3)
digitalWrite(VEXT_CTRL, Config.digi.ecoMode == 1 ? LOW : HIGH);
#endif
#if defined(HELTEC_WP) || defined(HELTEC_WS) || defined(HELTEC_V3_2) || defined(HELTEC_WSL_V3)
digitalWrite(VEXT_CTRL, Config.digi.ecoMode == 1 ? HIGH : LOW);
#endif
#endif
#ifdef HAS_GPS
if (Config.beacon.gpsActive && Config.digi.ecoMode != 1) activateGPS();
#endif
#ifdef ADC_CTRL
pinMode(ADC_CTRL, OUTPUT);
#if defined(HELTEC_WIRELESS_TRACKER) || defined(HELTEC_V3_2)
digitalWrite(ADC_CTRL, LOW);
#endif
#if defined(HELTEC_V3) || defined(HELTEC_V2) || defined(HELTEC_WSL_V3) || defined(HELTEC_WP)
digitalWrite(ADC_CTRL, HIGH);
#endif
#endif
#if defined(HELTEC_WIRELESS_TRACKER)
Wire.begin(BOARD_I2C_SDA, BOARD_I2C_SCL);
#endif
#if defined(HELTEC_V3) || defined(HELTEC_V3_2) || defined(HELTEC_WS) || defined(LIGHTGATEWAY_1_0) || defined(TTGO_LORA32_T3S3_V1_2) || defined(HELTEC_V2)
#if defined(HELTEC_V3) || defined(HELTEC_V3_2) || defined(HELTEC_WS) || defined(LIGHTGATEWAY_1_0) || defined(LIGHTGATEWAY_PLUS_1_0) || defined(TTGO_LORA32_T3S3_V1_2) || defined(HELTEC_V2)
Wire.begin(OLED_SDA, OLED_SCL);
#endif
@@ -269,7 +274,7 @@ namespace POWER_Utils {
delay(500);
Wire.begin(BOARD_I2C_SDA, BOARD_I2C_SCL);
#endif
delay(1000);
BATTERY_Utils::setup();
BATTERY_Utils::startupBatteryHealth();

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@@ -24,7 +24,7 @@ namespace QUERY_Utils {
if (queryQuestion == "?APRS?" || queryQuestion == "H" || queryQuestion == "HELP" || queryQuestion=="?") {
answer.concat("?APRSV ?APRSP ?APRSL ?APRSSSR ?EM=? ?TX=? "); // ?APRSH ?WHERE callsign
} else if (queryQuestion == "?APRSV") {
answer.concat("CA2RXU_LoRa_iGate 2.3 v");
answer.concat("CA2RXU_LoRa_iGate 3.0 v");
answer.concat(versionDate);
} else if (queryQuestion == "?APRSP") {
answer.concat("iGate QTH: ");
@@ -58,8 +58,8 @@ namespace QUERY_Utils {
else if (STATION_Utils::isManager(station) && (!queryFromAPRSIS || !Config.remoteManagement.rfOnly)) {
if (queryQuestion.indexOf("?EM=OFF") == 0) {
if ((Config.digi.mode == 2 || Config.digi.mode == 3) && Config.loramodule.txActive && Config.loramodule.rxActive && !Config.aprs_is.active) {
if (Config.digi.ecoMode == 1) { // Exit Digipeater EcoMode
answer = "DigiEcoMode:OFF";
if (Config.digi.ecoMode == 1 || Config.digi.ecoMode == 2) { // Exit Digipeater EcoMode or Digipeater without WiFiAP
answer = (Config.digi.ecoMode == 1) ? "DigiEcoMode:OFF" : "Digipeater + WiFiAP enabled";
Config.digi.ecoMode = 0;
Config.display.alwaysOn = true;
Config.display.timeout = 10;
@@ -69,7 +69,7 @@ namespace QUERY_Utils {
answer = "DigiEcoMode was OFF";
}
} else {
answer = "DigiEcoMode control not possible";
answer = "Digipeater Mode control not possible";
}
} else if (queryQuestion.indexOf("?EM=ON") == 0) {
if ((Config.digi.mode == 2 || Config.digi.mode == 3) && Config.loramodule.txActive && Config.loramodule.rxActive && !Config.aprs_is.active) {
@@ -82,7 +82,7 @@ namespace QUERY_Utils {
answer = "DigiEcoMode was ON";
}
} else {
answer = "DigiEcoMode control not possible";
answer = "Digipeater Mode control not possible";
}
} else if (queryQuestion.indexOf("?EM=?") == 0) { // Digipeater EcoMode Status
if (Config.digi.ecoMode == 0) {
@@ -113,7 +113,7 @@ namespace QUERY_Utils {
Config.writeFile();
}
}
if (answer == "") return "";
String queryAnswer = Config.callsign;

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@@ -27,13 +27,12 @@ namespace SLEEP_Utils {
wakeUpFlag = false;
}
}
void setup() {
if (Config.digi.ecoMode == 1) {
pinMode(RADIO_WAKEUP_PIN, INPUT);
attachInterrupt(digitalPinToInterrupt(RADIO_WAKEUP_PIN), wakeUpLoRaPacketReceived, RISING);
LoRa_Utils::wakeRadio();
#if defined(TTGO_LORA32_V2_1) || defined(TTGO_LORA32_V2_1_915) || defined(TTGO_LORA32_T3S3_V1_2) || defined(TTGO_T_BEAM_V1_0) || defined(TTGO_T_BEAM_V1_0_915) || defined(TTGO_T_BEAM_V1_0_SX1268) || defined(TTGO_T_BEAM_V1_2) || defined(TTGO_T_BEAM_V1_2_915) || defined(TTGO_T_BEAM_V1_2_SX1262) || defined(TTGO_T_DECK_PLUS) || defined(TTGO_T_DECK_GPS) || defined(TTGO_T_Beam_S3_SUPREME_V3) || defined(HELTEC_V3) || defined(HELTEC_V3_2) || defined(HELTEC_WP) || defined(HELTEC_WS) || defined(HELTEC_WSL_V3) || defined(HELTEC_WSL_V3_DISPLAY) || defined(HELTEC_WIRELESS_TRACKER) || defined(HELTEC_V2) || defined(XIAO_ESP32S3_LORA) || defined(LIGHTGATEWAY_1_0) || defined(TROY_LoRa_APRS) || defined(OE5HWN_MeshCom) || defined(ESP32_DIY_LoRa) || defined(ESP32_DIY_LoRa_915) || defined(ESP32_DIY_1W_LoRa) || defined(ESP32_DIY_1W_LoRa_915) || defined(ESP32_DIY_1W_LoRa_LLCC68) || defined(ESP32_DIY_1W_LoRa_Mesh_V1_2) || defined(WEMOS_S2_MINI_DIY_LoRa) || defined(WEMOS_D1_R32_RA02) || defined(WEMOS_LOLIN32_OLED_DIY_LoRa)
#if defined(TTGO_LORA32_V2_1) || defined(TTGO_LORA32_V2_1_915) || defined(TTGO_LORA32_T3S3_V1_2) || defined(TTGO_T_BEAM_V1_0) || defined(TTGO_T_BEAM_V1_0_915) || defined(TTGO_T_BEAM_V1_0_SX1268) || defined(TTGO_T_BEAM_V1_2) || defined(TTGO_T_BEAM_V1_2_915) || defined(TTGO_T_BEAM_V1_2_SX1262) || defined(TTGO_T_DECK_PLUS) || defined(TTGO_T_DECK_GPS) || defined(TTGO_T_Beam_S3_SUPREME_V3) || defined(HELTEC_V3) || defined(HELTEC_V3_2) || defined(HELTEC_WP) || defined(HELTEC_WS) || defined(HELTEC_WSL_V3) || defined(HELTEC_WSL_V3_DISPLAY) || defined(HELTEC_WIRELESS_TRACKER) || defined(HELTEC_V2) || defined(XIAO_ESP32S3_LORA) || defined(LIGHTGATEWAY_1_0) || defined(LIGHTGATEWAY_PLUS_1_0) || defined(TROY_LoRa_APRS) || defined(OE5HWN_MeshCom) || defined(ESP32_DIY_LoRa) || defined(ESP32_DIY_LoRa_915) || defined(ESP32_DIY_1W_LoRa) || defined(ESP32_DIY_1W_LoRa_915) || defined(ESP32_DIY_1W_LoRa_LLCC68) || defined(ESP32_DIY_1W_LoRa_Mesh_V1_2) || defined(WEMOS_S2_MINI_DIY_LoRa) || defined(WEMOS_D1_R32_RA02) || defined(WEMOS_LOLIN32_OLED_DIY_LoRa)
esp_sleep_enable_ext1_wakeup(GPIO_WAKEUP_PIN, ESP_EXT1_WAKEUP_ANY_HIGH);
#endif
#if defined(HELTEC_HTCT62) || defined(ESP32C3_DIY_1W_LoRa) || defined(ESP32C3_DIY_1W_LoRa_915) || defined(ESP32_C3_OctopusLab_LoRa)
@@ -57,7 +56,10 @@ namespace SLEEP_Utils {
LoRa_Utils::wakeRadio();
esp_light_sleep_start();
}
}
void checkSerial() {
if (Config.digi.ecoMode == 1) Serial.end();
}
}

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@@ -58,10 +58,10 @@ namespace STATION_Utils {
if (callsign.startsWith(wildcard)) return true;
} else {
if (list[i] == callsign) return true;
}
}
}
return false;
}
}
bool isBlacklisted(const String& callsign) {
return checkCallsignList(blacklist, callsign);
@@ -94,7 +94,7 @@ namespace STATION_Utils {
lastHeardObjects.emplace_back(LastHeardStation{millis(), object}); // Add new object and Tx
return true;
}
void deleteNotHeard() {
std::vector<LastHeardStation> lastHeardStation_temp;
for (int i = 0; i < lastHeardStations.size(); i++) {
@@ -149,13 +149,13 @@ namespace STATION_Utils {
return true;
}
void processOutputPacketBufferUltraEcoMode() {
void processOutputPacketBufferUltraEcoMode() {
size_t currentIndex = 0;
while (currentIndex < outputPacketBuffer.size()) { // this sends all packets from output buffer
delay(3000); // and cleans buffer to avoid sending packets with time offset
LoRa_Utils::sendNewPacket(outputPacketBuffer[currentIndex]); // next time it wakes up
currentIndex++;
}
}
outputPacketBuffer.clear();
//
if (saveNewDigiEcoModeConfig) {

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@@ -16,8 +16,8 @@ namespace SYSLOG_Utils {
if (Config.syslog.active && WiFi.status() == WL_CONNECTED) {
String syslogPacket = "<165>1 - ";
syslogPacket.concat(Config.callsign);
syslogPacket.concat(" CA2RXU_LoRa_iGate_1.3 - - - "); //RFC5424 The Syslog Protocol
syslogPacket.concat(" CA2RXU_LoRa_iGate_3.0 - - - "); //RFC5424 The Syslog Protocol
char signalData[35];
snprintf(signalData, sizeof(signalData), " / %ddBm / %.2fdB / %dHz", rssi, snr, freqError);

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@@ -47,7 +47,7 @@ namespace TNC_Utils {
void handleInputData(char character, int bufferIndex) {
String* data = (bufferIndex == -1) ? &inputSerialBuffer : &inputServerBuffer[bufferIndex];
if (data->length() == 0 && character != (char)FEND) return;
data->concat(character);
if (character == (char)FEND && data->length() > 3) {

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@@ -189,7 +189,7 @@ namespace Utils {
void checkBeaconInterval() {
uint32_t lastTx = millis() - lastBeaconTx;
if (lastBeaconTx == 0 || lastTx >= Config.beacon.interval * 60 * 1000) {
beaconUpdate = true;
beaconUpdate = true;
}
#ifdef HAS_GPS
@@ -229,7 +229,7 @@ namespace Utils {
#endif
if (Config.wxsensor.active) {
const char* sensorData = (wxModuleType == 0) ? ".../...g...t..." : WX_Utils::readDataSensor().c_str();
String sensorData = (wxModuleType == 0) ? ".../...g...t..." : WX_Utils::readDataSensor();
beaconPacket += sensorData;
secondaryBeaconPacket += sensorData;
}

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@@ -115,7 +115,7 @@ namespace WEB_Utils {
Config.wifiAutoAP.password = request->getParam("wifi.autoAP.password", true)->value();
Config.wifiAutoAP.timeout = request->getParam("wifi.autoAP.timeout", true)->value().toInt();
Config.aprs_is.active = request->hasParam("aprs_is.active", true);
Config.aprs_is.passcode = request->getParam("aprs_is.passcode", true)->value();
@@ -175,7 +175,7 @@ namespace WEB_Utils {
Config.battery.externalSleepVoltage = request->getParam("battery.externalSleepVoltage", true)->value().toFloat();
Config.battery.sendVoltageAsTelemetry = request->hasParam("battery.sendVoltageAsTelemetry", true);
Config.wxsensor.active = request->hasParam("wxsensor.active", true);
Config.wxsensor.heightCorrection = request->getParam("wxsensor.heightCorrection", true)->value().toInt();
Config.wxsensor.temperatureCorrection = request->getParam("wxsensor.temperatureCorrection", true)->value().toFloat();

View File

@@ -1,4 +1,7 @@
#include <TinyGPS++.h>
#ifdef LIGHTGATEWAY_PLUS_1_0
#include "Adafruit_SHTC3.h"
#endif
#include "configuration.h"
#include "board_pinout.h"
#include "wx_utils.h"
@@ -23,11 +26,14 @@ float newHum, newTemp, newPress, newGas;
Adafruit_BME280 bme280;
#if defined(HELTEC_V3) || defined(HELTEC_V3_2)
Adafruit_BMP280 bmp280(&Wire1);
Adafruit_Si7021 sensor = Adafruit_Si7021();
Adafruit_Si7021 sensor = Adafruit_Si7021();
#else
Adafruit_BMP280 bmp280;
Adafruit_BME680 bme680;
Adafruit_Si7021 sensor = Adafruit_Si7021();
Adafruit_Si7021 si7021 = Adafruit_Si7021();
#endif
#ifdef LIGHTGATEWAY_PLUS_1_0
Adafruit_SHTC3 shtc3 = Adafruit_SHTC3();
#endif
@@ -41,16 +47,23 @@ namespace WX_Utils {
err = Wire1.endTransmission();
#else
Wire.beginTransmission(addr);
#ifdef LIGHTGATEWAY_PLUS_1_0
Wire.write(0x35);
Wire.write(0x17);
#endif
err = Wire.endTransmission();
#endif
if (err == 0) {
//Serial.println(addr); this shows any connected board to I2C
if (addr == 0x76 || addr == 0x77) { // BME/BMP
//Serial.println(addr); //this shows any connected board to I2C
if (addr == 0x76 || addr == 0x77) { // BME or BMP
wxModuleAddress = addr;
return;
} else if (addr == 0x40) { // Si7011
wxModuleAddress = addr;
return;
} else if (addr == 0x70) { // SHTC3
wxModuleAddress = addr;
return;
}
}
}
@@ -65,40 +78,49 @@ namespace WX_Utils {
#if defined(HELTEC_V3) || defined(HELTEC_V3_2) || defined(HELTEC_WSL_V3) || defined(HELTEC_WSL_V3_DISPLAY)
if (bme280.begin(wxModuleAddress, &Wire1)) {
Serial.println("BME280 sensor found");
wxModuleType = 1;
wxModuleFound = true;
wxModuleType = 1;
wxModuleFound = true;
}
#else
if (bme280.begin(wxModuleAddress)) {
Serial.println("BME280 sensor found");
wxModuleType = 1;
wxModuleFound = true;
wxModuleType = 1;
wxModuleFound = true;
}
if (!wxModuleFound) {
if (bme680.begin(wxModuleAddress)) {
Serial.println("BME680 sensor found");
wxModuleType = 3;
wxModuleFound = true;
wxModuleType = 3;
wxModuleFound = true;
}
}
#endif
if (!wxModuleFound) {
if (bmp280.begin(wxModuleAddress)) {
Serial.println("BMP280 sensor found");
wxModuleType = 2;
wxModuleFound = true;
wxModuleType = 2;
wxModuleFound = true;
}
}
} else if (wxModuleAddress == 0x40) {
if(sensor.begin()) {
if(si7021.begin()) {
Serial.println("Si7021 sensor found");
wxModuleType = 4;
wxModuleFound = true;
wxModuleType = 4;
wxModuleFound = true;
}
}
}
#ifdef LIGHTGATEWAY_PLUS_1_0
else if (wxModuleAddress == 0x70) {
if (shtc3.begin()) {
Serial.println("SHTC3 sensor found");
wxModuleType = 5;
wxModuleFound = true;
}
}
#endif
if (!wxModuleFound) {
displayShow("ERROR", "", "BME/BMP/Si7021 sensor active", "but no sensor found...", 2000);
Serial.println("BME/BMP/Si7021 sensor Active in config but not found! Check Wiring");
displayShow("ERROR", "", "BME/BMP/Si7021/SHTC3 sensor active", "but no sensor found...", 2000);
Serial.println("BME/BMP/Si7021/SHTC3 sensor Active in config but not found! Check Wiring");
} else {
switch (wxModuleType) {
case 1:
@@ -211,9 +233,18 @@ namespace WX_Utils {
#endif
break;
case 4: // Si7021
newTemp = sensor.readTemperature();
newTemp = si7021.readTemperature();
newHum = si7021.readHumidity();
newPress = 0;
newHum = sensor.readHumidity();
break;
case 5: // SHTC3
#ifdef LIGHTGATEWAY_PLUS_1_0
sensors_event_t humidity, temp;
shtc3.getEvent(&humidity, &temp);
newTemp = temp.temperature;
newHum = humidity.relative_humidity;
newPress = 0;
#endif
break;
}
@@ -225,20 +256,20 @@ namespace WX_Utils {
String tempStr = generateTempString(((newTemp + Config.wxsensor.temperatureCorrection) * 1.8) + 32);
String humStr;
if (wxModuleType == 1 || wxModuleType == 3 || wxModuleType == 4) {
if (wxModuleType == 1 || wxModuleType == 3 || wxModuleType == 4 || wxModuleType == 5) {
humStr = generateHumString(newHum);
} else if (wxModuleType == 2) {
humStr = "..";
}
String presStr = (wxModuleAddress == 4)
String presStr = (wxModuleType == 4 || wxModuleType == 5)
? "....."
#ifdef HAS_GPS
: generatePresString(newPress + (gps.altitude.meters() / CORRECTION_FACTOR));
#else
: generatePresString(newPress + (Config.wxsensor.heightCorrection / CORRECTION_FACTOR));
#endif
fifthLine = "BME-> ";
fifthLine += String(int(newTemp + Config.wxsensor.temperatureCorrection));
fifthLine += "C ";

View File

@@ -12,7 +12,7 @@
#define RADIO_RST_PIN -1
#define RADIO_BUSY_PIN 8
#define RADIO_WAKEUP_PIN RADIO_DIO1_PIN
#define GPIO_WAKEUP_PIN RADIO_DIO1_PIN
#define GPIO_WAKEUP_PIN GPIO_NUM_3
// Display
#define HAS_DISPLAY

View File

@@ -0,0 +1,36 @@
#ifndef BOARD_PINOUT_H_
#define BOARD_PINOUT_H_
// LoRa Radio
#define HAS_SX1268
#define HAS_1W_LORA
#define RADIO_VCC_PIN 21
#define RADIO_SCLK_PIN 12
#define RADIO_MISO_PIN 13
#define RADIO_MOSI_PIN 11
#define RADIO_CS_PIN 10
#define RADIO_RST_PIN 9
#define RADIO_DIO1_PIN 5
#define RADIO_BUSY_PIN 6
#define RADIO_RXEN 42
#define RADIO_TXEN 14
#define RADIO_WAKEUP_PIN RADIO_DIO1_PIN
#define GPIO_WAKEUP_PIN GPIO_SEL_5
// Display
#define HAS_DISPLAY
#undef OLED_SDA
#undef OLED_SCL
#undef OLED_RST
#define OLED_SDA 3
#define OLED_SCL 4
#define OLED_RST -1 // Reset pin # (or -1 if sharing Arduino reset pin)
// Aditional Config
#define INTERNAL_LED_PIN 16
#define BATTERY_PIN 1
#define BUTTON_PIN 0
#endif

View File

@@ -0,0 +1,11 @@
[env:QRPLabs_LightGateway_Plus_1_0]
board = esp32-s3-devkitc-1
board_build.mcu = esp32s3
build_flags =
${common.build_flags}
${common.usb_flags}
-D LIGHTGATEWAY_PLUS_1_0
lib_deps =
${common.lib_deps}
${common.display_libs}
adafruit/Adafruit SHTC3 Library @ 1.0.1

View File

@@ -14,6 +14,6 @@
#define RADIO_RXEN 6
#define RADIO_TXEN 7
#define RADIO_WAKEUP_PIN RADIO_DIO1_PIN
#define GPIO_WAKEUP_PIN RADIO_DIO1_PIN
#define GPIO_WAKEUP_PIN GPIO_NUM_2
#endif

View File

@@ -14,6 +14,6 @@
#define RADIO_RXEN 6
#define RADIO_TXEN 7
#define RADIO_WAKEUP_PIN RADIO_DIO1_PIN
#define GPIO_WAKEUP_PIN RADIO_DIO1_PIN
#define GPIO_WAKEUP_PIN GPIO_NUM_2
#endif

View File

@@ -11,7 +11,7 @@
#define RADIO_DIO1_PIN 3
#define RADIO_BUSY_PIN 4
#define RADIO_WAKEUP_PIN RADIO_DIO1_PIN
#define GPIO_WAKEUP_PIN RADIO_DIO1_PIN
#define GPIO_WAKEUP_PIN GPIO_NUM_3
// Aditional Config
#define BATTERY_PIN 1

View File

@@ -1,5 +1,5 @@
[env:heltec_ht-ct62]
board = heltec_wireless_stick_lite
board = esp32-c3-devkitm-1
board_build.mcu = esp32c3
build_flags =
${common.build_flags}